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Natural organic matter inhibits Ni stabilization during Fe(Ⅱ)-catalyzed ferrihydrite transformation

机译:天然有机物在Fe(Ⅱ)期间抑制Ni稳定化 - 催化Ferrihydrite转化

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Trace metals, such as nickel (Ni), are often found associated with ferrihydrite (Fh) in soil and sediment and have been shown to redistribute during Fe(Ⅱ)-catalyzed transformation of Fh. Fe(Ⅱ)-catalyzed transformation of Fh, however, is often inhibited when natural organic matter (NOM) is associated with Fh. To explore whether NOM affects the behavior of Ni during Fe(Ⅱ)-catalyzed transformation of Fh, we tracked Ni distribution, Fe atom exchange, and mineral transformation of Fh and Fh coprecipitated with Suwannee River natural organic matter (SRNOM-Fh). As expected, in the absence of Fe(Ⅱ), Fh and SRNOM-Fh did not transform to secondary Fe minerals after two weeks. We further observed little difference in Ni adsorption on SRNOM-Fh compared to Fh. In the presence of Fe(Ⅱ), however, we found that Ni associated with SRNOM-Fh was more susceptible to acid extraction than Fh. Specifically, we found almost double the amount of Ni remaining in the Fh after mild extraction compared to SRNOM-Fh. XRD showed that Fh transformed to goethite and magnetite whereas SRNOM-Fh did not transform despite ~(57)Fe isotope tracer experiments confirmed that SRNOM-Fh underwent extensive atom exchange with aqueous Fe(Ⅱ). Our findings suggest that Fe atom exchange may not be sufficient for obvious Ni stabilization and that transformation to secondary minerals may be necessary for Ni stabilization to occur.
机译:痕量金属,例如镍(Ni),通常发现与土壤和沉积物中的Ferrihydite(FH)相关,并且已被证明在Fe(Ⅱ)期间重新分配 - 催化转化FH。然而,当天然有机物(NOM)与FH相关时,FE(Ⅱ)的转化通常会抑制FH。为了探索NOM在FE(Ⅱ)期间NI的行为是否 - 催化FH的转化,我们跟踪了NI分布,FE原子交换和FH和FH的矿物转化,与Suwannee河天然有机物(Srnom-FH)进行FH和FH。正如预期的那样,在没有Fe(Ⅱ),FH和Srnom-FH在两周后没有转化为二次Fe矿物质。与FH相比,我们进一步观察到对Srnom-FH的Ni吸附很小。然而,在Fe(Ⅱ)的存在下,我们发现与Srnom-FH相关的Ni比FH更容易易受酸提取。具体而言,与Srnom-FH相比,我们发现在温和提取后的FH中剩余的Ni的数量几乎加倍。 XRD表明,FH转换为甲酸盐和磁铁矿,而Srnom-FH尽管〜(57)Fe同位素示踪实验证实,Srnom-FH接受了与含水Fe水溶液的广泛的原子交换(Ⅱ)。我们的研究结果表明,对于明显的Ni稳定性,Fe原子交换可能不足以使其对次级矿物质的转化可能需要进行NI稳定性。

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